Cao, Q.N.; Cherqaoui, A.; Henrique Michelin Beraldo, C.; Paternoster, C.; Gélinas, S.; Blais, C.; Mengucci, P.; Mantovani, D.
Effect of Volumetric Energy Density on the Evolution of the Microstructure and the Degradation Behavior of 3D-Printed Fe-Mn-C Alloys from Water-Atomized Powders. Metals 2025, 15, 101.
https://doi.org/10.3390/met15020101
AMA Style
Cao QN, Cherqaoui A, Henrique Michelin Beraldo C, Paternoster C, Gélinas S, Blais C, Mengucci P, Mantovani D.
Effect of Volumetric Energy Density on the Evolution of the Microstructure and the Degradation Behavior of 3D-Printed Fe-Mn-C Alloys from Water-Atomized Powders. Metals. 2025; 15(2):101.
https://doi.org/10.3390/met15020101
Chicago/Turabian Style
Cao, Quang Nguyen, Abdelhakim Cherqaoui, Carlos Henrique Michelin Beraldo, Carlo Paternoster, Simon Gélinas, Carl Blais, Paolo Mengucci, and Diego Mantovani.
2025. "Effect of Volumetric Energy Density on the Evolution of the Microstructure and the Degradation Behavior of 3D-Printed Fe-Mn-C Alloys from Water-Atomized Powders" Metals 15, no. 2: 101.
https://doi.org/10.3390/met15020101
APA Style
Cao, Q. N., Cherqaoui, A., Henrique Michelin Beraldo, C., Paternoster, C., Gélinas, S., Blais, C., Mengucci, P., & Mantovani, D.
(2025). Effect of Volumetric Energy Density on the Evolution of the Microstructure and the Degradation Behavior of 3D-Printed Fe-Mn-C Alloys from Water-Atomized Powders. Metals, 15(2), 101.
https://doi.org/10.3390/met15020101